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首页> 外文期刊>Journal of geophysical research. Planets >Lunar Titanium and Frequency-Dependent Microwave Loss Tangent as Constrained by the Chang'E-2 MRM and LRO Diviner Lunar Radiometers
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Lunar Titanium and Frequency-Dependent Microwave Loss Tangent as Constrained by the Chang'E-2 MRM and LRO Diviner Lunar Radiometers

机译:月球钛和微波频率相关损耗角正切,嫦娥二号MRM制约月球勘测轨道飞行器搭载的月球辐射计

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摘要

Passive microwave frequency (~300 MHz to 300 GHz) observations of the Moon have a long history and have been suggested as a plausible orbital instrument for the Moon and other bodies. However, global, orbital multifrequency measurements of lunar passive microwave emission have only recently been made by the Chinese Chang'E-1 and -2 microwave radiometer (MRM) instruments. These missions carried nearly identical 4-channel (3.0, 7.8, 19.35, and 37 GHz) instruments into lunar orbit in 2007-2009 and 2010-2011, respectively. Over the same time period, the ongoing Lunar Reconnaissance Orbiter (LRO) mission carried the Diviner Lunar Radiometer, which collected surface temperature measurements in the far infrared (~7.8-400 μm) from 2009 to present. By combining these data and associated thermal models, we provide new constraints on the relationship between physical temperature and microwave brightness temperature to reveal novel information about regolith thermal and dielectric properties which can reveal unique geologic information about the Moon. Here, we describe several first-order global results to come from this combined data set, focusing primarily on the ability to detect, map, and quantify dielectric loss tangent variations of the Moon, including those from the presence of titanium-bearing ilmenite. We update the loss tangent models for both highlands and mare and identify a clear frequency dependence that differs in sign between the two. We use the correlation with visible wavelength TiO_2 mapping to provide a means to separate out the loss from rocks and from that of composition.
机译:无源微波频率(~ 300兆赫到300兆赫)观察月球的历史悠久被认为是一个合理的轨道吗仪器对月球和其他机构。然而,全球轨道多频测量月球的被动微波发射只有最近由中国吗嫦娥1和2微波辐射计(MRM)仪器。相同的4-channel (3.0, 7.8, 19.35, 37 GHz)在2007 - 2009年和仪器到月球轨道分别2010 - 2011。期间,持续的月球勘测轨道飞行器(LRO)任务搭载的月球辐射计,收集表面温度测量的远红外线(-400 ~ 7.8μm)从2009年到现在。相关的热模型,我们提供新的限制物理之间的关系温度和微波亮度温度揭示小说风化层的信息热能和介电性能揭示独特的地质信息月球。全球的结果来自这个组合数据集,主要关注检测的能力,地图,量化介电损耗角正切月亮的变化,包括)的钛铁矿。高地和损耗角正切模型母马和确定一个明确的频率依赖性这两者之间不同的标志。与可见光波长相关钛有序映射提供一种方法来分离出的损失岩石和成分。

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